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Coherent peaks and minimal probing depth in photoemission spectroscopy of Mott-Hubbard systems

Panaccione, G. (author)
Altarelli, M. (author)
Fondacaro, A. (author)
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Georges, A. (author)
Huotari, S. (author)
Lacovig, P. (author)
Lichtenstein, A. (author)
Metcalf, P. (author)
Monaco, G. (author)
Offi, F. (author)
Paolasini, L. (author)
Poteryaev, A. (author)
Tjernberg, Oscar (author)
KTH,Materialfysik, MF
Sacchi, M. (author)
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 (creator_code:org_t)
2006
2006
English.
In: Physical Review Letters. - 0031-9007 .- 1079-7114. ; 97:11
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • We have measured hard x-ray photoemission spectra of pure vanadium sesquioxide (V2O3) across its metal-insulator transition. We show that, in the metallic phase, a clear correlation exists between the shakedown satellites observed in the vanadium 2p and 3p core-level spectra and the coherent peak measured at the Fermi level. Comparing experimental results and dynamical mean-field theory calculations, we estimate the Hubbard energy U in V2O3 (4.20 +/- 0.05 eV). From our bulk-sensitive photoemission spectra we infer the existence of a critical probing depth for investigating electronic properties in strongly correlated solids.

Keyword

metal-insulator transitions
mean-field theory
cr-doped v2o3
infinite dimensions
limit
model

Publication and Content Type

ref (subject category)
art (subject category)

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